A Multiscale Workflow for Thermal Analysis of 3DI Chip Stacks
Max Bloomfield, Amogh Wasti, et al.
ITherm 2025
On-chip power management techniques have evolved over several processor generations. However, response time and scalability constraints have made it difficult to translate existing power-management strategies to current or next-generation System-on-Chip (SoC) architectures, which are expected to comprise of tens to hundreds of cores and accelerators. In this work we present BlitzCoin, a fully decentralized hardware power-management strategy for large accelerator-rich SoCs, coupled with an optimized unified voltage/frequency actuator. We implement BlitzCoin in a 12nm technology node and deploy it in full SoCs targeted toward different application domains. Our evaluations show markedly faster (8× to 12×) response times, which provides 25%-34% throughput improvement and allows for scaling to 7× to 13× larger SoCs compared to state-of-the-art centralized power-management strategies, while keeping sub-1% area overhead.
Max Bloomfield, Amogh Wasti, et al.
ITherm 2025
Evaline Ju, Kelly Abuelsaad
KubeCon EU 2026
Jinghan Huang, Jiaqi Lou, et al.
ISCA 2024
Ilias Iliadis
International Journal On Advances In Networks And Services